Two concentric spheres of diameter D 1 = 0.8 m and D 2 = 1.2 m are separated by an air space and have surface temperatures of T 1 = 400 K and T 2 = 300 K . (a) If the surfaces are black, what is the net rate of radiation exchange between the spheres? (b) What is the net rate of radiation exchange between the surfaces if they are diffuse and gray with ε 1 = 0.5 and ε 2 = 0.05 ? (c) What is the net rate of radiation exchange if D 2 is increased to 20 m, with ε 2 = 0.05 , ε 1 = 0.5 , and D 1 = 0.8 m ? What error would be introduced by assuming blackbody behavior for the outer surface ( ε 2 = 1 ) , with all other conditions remaining the same? (d) For D 2 = 1.2 m and emissivities of ε 1 = 0.1 , 0.5 , and 1.0, compute and plot the net rate of radiation exchange as a function of ε 2 for 0.05 ≤ ε 2 ≤ 1.0 .
Two concentric spheres of diameter D 1 = 0.8 m and D 2 = 1.2 m are separated by an air space and have surface temperatures of T 1 = 400 K and T 2 = 300 K . (a) If the surfaces are black, what is the net rate of radiation exchange between the spheres? (b) What is the net rate of radiation exchange between the surfaces if they are diffuse and gray with ε 1 = 0.5 and ε 2 = 0.05 ? (c) What is the net rate of radiation exchange if D 2 is increased to 20 m, with ε 2 = 0.05 , ε 1 = 0.5 , and D 1 = 0.8 m ? What error would be introduced by assuming blackbody behavior for the outer surface ( ε 2 = 1 ) , with all other conditions remaining the same? (d) For D 2 = 1.2 m and emissivities of ε 1 = 0.1 , 0.5 , and 1.0, compute and plot the net rate of radiation exchange as a function of ε 2 for 0.05 ≤ ε 2 ≤ 1.0 .
Solution Summary: The author explains the net heat radiation exchange between the surfaces and the emissivity of the surface.
Two concentric spheres of diameter
D
1
=
0.8
m
and
D
2
=
1.2
m
are separated by an air space and have surface temperatures of
T
1
=
400
K
and
T
2
=
300
K
. (a) If the surfaces are black, what is the net rate of radiation exchange between the spheres? (b) What is the net rate of radiation exchange between the surfaces if they are diffuse and gray with
ε
1
=
0.5
and
ε
2
=
0.05
? (c) What is the net rate of radiation exchange if
D
2
is increased to 20 m, with
ε
2
=
0.05
,
ε
1
=
0.5
, and
D
1
=
0.8
m
? What error would be introduced by assuming blackbody behavior for the outer surface
(
ε
2
=
1
)
, with all other conditions remaining the same? (d) For
D
2
=
1.2
m
and emissivities of
ε
1
=
0.1
,
0.5
,
and 1.0, compute and plot the net rate of radiation exchange as a function of
ε
2
for
0.05
≤
ε
2
≤
1.0
.
For Problems 5–19 through 5–28, design a crank-rocker mechanism with a time ratio of Q, throw angle of (Δθ4)max, and time per cycle of t. Use either the graphical or analytical method. Specify the link lengths L1, L2, L3, L4, and the crank speed.
Q = 1; (Δθ4)max = 78°; t = 1.2s.
3) find the required fillet welds size if the allowable
shear stress is 9.4 kN/m² for the figure below.
Calls
Ans: h=5.64 mm
T
=
حاجة
، منطقة
نصف القوة
250
190mm
450 mm
F= 30 KN
そのに青
-F₂= 10 KN
F2
a problem existed at the stocking stations of a mini-load AS/RS (automated storage and retrieval system) of a leading electronics manufacturer (Fig.1). At these stations, operators fill the bin delivered by the crane with material arriving in a tote over a roller conveyor. The conveyor was designed at such a height that it was impossible to reach the hooks comfortably even with the tote extended. Furthermore, cost consideration came into the picture and the conveyor height was not reduced. Instead, a step stool was considered to enable the stocker to reach the moving hooks comfortably. The height of the hooks from the floor is 280.2 cm (AD). The tote length is 54.9 cm. The projection of tote length and arm reach, CB = 66.1 cm. a) What anthropometric design principles would you follow to respectively calculate height, length, and width of the step to make it usable to a large number of people? b) What is the minimum height (EF) of the step with no shoe allowance? c) What is the minimum…
Thinking Like an Engineer: An Active Learning Approach (4th Edition)
Knowledge Booster
Learn more about
Need a deep-dive on the concept behind this application? Look no further. Learn more about this topic, mechanical-engineering and related others by exploring similar questions and additional content below.